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深入了解 IKBKG/NEMO 基因座:报道新的突变和导致色素失禁症的复杂基因组重排。

Insight into IKBKG/NEMO locus: report of new mutations and complex genomic rearrangements leading to incontinentia pigmenti disease.

机构信息

Institute of Genetics and Biophysics 'Adriano Buzzati-Traverso', IGB-CNR, Naples, Italy.

出版信息

Hum Mutat. 2014 Feb;35(2):165-77. doi: 10.1002/humu.22483. Epub 2013 Dec 12.


DOI:10.1002/humu.22483
PMID:24339369
Abstract

Incontinentia pigmenti (IP) is an X-linked-dominant Mendelian disorder caused by mutation in the IKBKG/NEMO gene, encoding for NEMO/IKKgamma, a regulatory protein of nuclear factor kappaB (NF-kB) signaling. In more than 80% of cases, IP is due to recurrent or nonrecurrent deletions causing loss-of-function (LoF) of NEMO/IKKgamma. We review how the local architecture of the IKBKG/NEMO locus with segmental duplication and a high frequency of repetitive elements favor de novo aberrant recombination through different mechanisms producing genomic microdeletion. We report here a new microindel (c.436_471delinsT, p.Val146X) arising through a DNA-replication-repair fork-stalling-and-template-switching and microhomology-mediated-end-joining mechanism in a sporadic IP case. The LoF mutations of IKBKG/NEMO leading to IP include small insertions/deletions (indel) causing frameshift and premature stop codons, which account for 10% of cases. We here present 21 point mutations previously unreported, which further extend the spectrum of pathologic variants: 14/21 predict LoF because of premature stop codon (6/14) or frameshift (8/14), whereas 7/21 predict a partial loss of NEMO/IKKgamma activity (two splicing and five missense). We review how the analysis of IP-associated IKBKG/NEMO hypomorphic mutants has contributed to the understanding of the pathophysiological mechanism of IP disease and has provided important information on affected NF-kB signaling. We built a locus-specific database listing all IKBKG/NEMO variants, accessible at http://IKBKG.lovd.nl.

摘要

遗传性皮肤病-色素失禁症(IP)是一种 X 连锁显性遗传的孟德尔疾病,由 IKBKG/NEMO 基因突变引起,该基因编码 NF-κB 信号通路的调节蛋白 NEMO/IKKγ。在超过 80%的病例中,IP 是由于反复或非反复缺失导致 NEMO/IKKγ 功能丧失(LoF)。我们回顾了 IKBKG/NEMO 基因座的局部结构,其中包括片段重复和高频重复元件,通过不同的机制有利于从头发生异常重组,产生基因组微缺失。我们在这里报告了一个新的微缺失/插入(c.436_471delinsT,p.Val146X),这是通过 DNA 复制修复叉停滞和模板转换以及微同源介导的末端连接机制在一个散发性 IP 病例中产生的。导致 IP 的 IKBKG/NEMO 失活突变包括小插入/缺失(indel),导致移码和过早终止密码子,占病例的 10%。我们在此介绍了 21 个以前未报道的点突变,进一步扩展了病理性变异的范围:14/21 由于提前终止密码子(6/14)或移码(8/14)而预测为 LoF,而 7/21 预测为 NEMO/IKKγ 活性部分丧失(两个剪接和五个错义)。我们回顾了对 IP 相关 IKBKG/NEMO 低功能突变体的分析如何有助于理解 IP 疾病的病理生理机制,并提供了关于受影响的 NF-κB 信号的重要信息。我们建立了一个特定于基因座的数据库,列出了所有的 IKBKG/NEMO 变体,可在 http://IKBKG.lovd.nl 上访问。

相似文献

[1]
Insight into IKBKG/NEMO locus: report of new mutations and complex genomic rearrangements leading to incontinentia pigmenti disease.

Hum Mutat. 2013-12-12

[2]
Genomic architecture at the Incontinentia Pigmenti locus favours de novo pathological alleles through different mechanisms.

Hum Mol Genet. 2011-11-25

[3]
Lack of interaction between NEMO and SHARPIN impairs linear ubiquitination and NF-κB activation and leads to incontinentia pigmenti.

J Allergy Clin Immunol. 2017-2-27

[4]
EDA-ID and IP, two faces of the same coin: how the same IKBKG/NEMO mutation affecting the NF-κB pathway can cause immunodeficiency and/or inflammation.

Int Rev Immunol. 2015-8-13

[5]
Microdeletion/duplication at the Xq28 IP locus causes a de novo IKBKG/NEMO/IKKgamma exon4_10 deletion in families with Incontinentia Pigmenti.

Hum Mutat. 2009-9

[6]
Alterations of the IKBKG locus and diseases: an update and a report of 13 novel mutations.

Hum Mutat. 2008-5

[7]
The common NF-κB essential modulator (NEMO) gene rearrangement in Korean patients with incontinentia pigmenti.

J Korean Med Sci. 2010-9-20

[8]
A novel inhibitor of nuclear factor kappa-B kinase subunit gamma mutation identified in an incontinentia pigmenti patient with syndromic tooth agenesis.

Arch Oral Biol. 2019-3-18

[9]
A Novel Frameshift Mutation of the IKBKG Gene Causing Typical Incontinentia Pigmenti.

Srp Arh Celok Lek. 2015

[10]
Unusual Father-to-Daughter Transmission of Incontinentia Pigmenti Due to Mosaicism in IP Males.

Pediatrics. 2017-9

引用本文的文献

[1]
Clinical relevance of loss-of-function mutations of /.

Genes Dis. 2025-1-12

[2]
Case Report: Diagnosis and treatment of with central nervous system anomalies in one patient.

Front Pediatr. 2025-1-15

[3]
Partial Loss of NEMO Function in a Female Carrier with No Incontinentia Pigmenti.

J Clin Med. 2025-1-9

[4]
Incontinentia pigmenti underlies thymic dysplasia, autoantibodies to type I IFNs, and viral diseases.

J Exp Med. 2024-11-4

[5]
Case report: Variability in clinical manifestations within a family with incontinentia pigmenti.

Front Med (Lausanne). 2024-7-17

[6]
A case report of neonatal incontinentia pigmenti complicated by severe cerebrovascular lesions in one of the male monozygotic twins.

Front Pediatr. 2024-5-21

[7]
An efficient molecular genetic testing strategy for incontinentia pigmenti based on single-tube long fragment read sequencing.

NPJ Genom Med. 2024-5-29

[8]
Alternative mRNA splicing events and regulators in epidermal differentiation.

Cell Rep. 2024-3-26

[9]
NEMO reshapes the α-Synuclein aggregate interface and acts as an autophagy adapter by co-condensation with p62.

Nat Commun. 2023-12-19

[10]
Linear ubiquitination induces NEMO phase separation to activate NF-κB signaling.

Life Sci Alliance. 2023-4

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